1) Intermolecular Hydrogen Bonding
分子间氢键
1.
Ground state intermolecular hydrogen bonding is favorable when OS is included into the cavity of β-CD and DM-β-CD.
结果表明,在OS与-βCD形成的包结物中,-βCD的分子空腔有利于OS分子间氢键的形成,从而导致基于分子间氢键的短波长荧光增强而基于分子内氢键的长波长荧光减弱;与-βCD相比,DM--βCD因端口边沿处甲基取代基对包结作用会产生立体位阻,更有利于OS形成分子间氢键。
2.
The crystal packing is stabilized byπ-πstacking of benzene rings and intermolecular hydrogen bonding involving the carboxyl group and hydratemolecule and forms supramolecu.
晶体堆积通过苯环的π-π堆积和羧基与水的分子间氢键作用而稳定,形成超分子结构。
3.
The stability of intermolecular hydrogen bonding between 4-(2-chloro-3--methyl butanoyloxy)--4'-stilbazole (MBSB) and 4-heptanoxyl-benzoic acid (7BA) was investigated by means of temperature dependent FTIR spectra, meanwhile the relationship between the ester carbonyl group andtemperature was also studied.
通过变温红外光谱研究了存在于4-[4-(2-氯-3-甲基丁酰氧基)-苯乙烯基]吡啶(MBSB)和对庚氧基苯甲酸(7BA)间的分子间氢键的稳定性及该氢键复合物的酯羰基基因与温度的依赖关系。
4) intermolecular hydrogen bonding complexes
分子间氢键复合物
5) intermolecular hydrogen bond induced liquid crystal
分子间氢键诱导型液晶
6) Intramolecular Hydrogen Bonding
分子内氢键
1.
The distribution fraction of OS with intermolecular hydrogen bonding is higher than that of OS with intramolecular hydrogen bonding in aqueous solutions.
结果表明,在OS与-βCD形成的包结物中,-βCD的分子空腔有利于OS分子间氢键的形成,从而导致基于分子间氢键的短波长荧光增强而基于分子内氢键的长波长荧光减弱;与-βCD相比,DM--βCD因端口边沿处甲基取代基对包结作用会产生立体位阻,更有利于OS形成分子间氢键。
补充资料:伯仲间
1.见"伯仲之间"。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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